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Two CES1 Gene Mutations Lead to Dysfunctional Carboxylesterase 1 Activity in Man: Clinical Significance and Molecular Basis

机译:两个CES1基因突变导致功能失调的羧基酯酶1活性的人:临床意义和分子基础。

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摘要

The human carboxylesterase 1 (CES1) gene encodes for the enzyme carboxylesterase 1, a serine esterase governing both metabolic deactivation and activation of numerous therapeutic agents. During the course of a study of the pharmacokinetics of the methyl ester racemic psychostimulant methylphenidate, profoundly elevated methylphenidate plasma concentrations, unprecedented distortions in isomer disposition, and increases in hemodynamic measures were observed in a subject of European descent. These observations led to a focused study of the subject's CES1 gene. DNA sequencing detected two coding region single-nucleotide mutations located in exons 4 and 6. The mutation in exon 4 is located in codon 143 and leads to a nonconservative substitution, p.Gly143Glu. A deletion in exon 6 at codon 260 results in a frameshift mutation, p.Asp260fs, altering residues 260–299 before truncating at a premature stop codon. The minor allele frequency of p.Gly143Glu was determined to be 3.7%, 4.3%, 2.0%, and 0% in white, black, Hispanic, and Asian populations, respectively. Of 925 individual DNA samples examined, none carried the p.Asp260fs, indicating it is an extremely rare mutation. In vitro functional studies demonstrated the catalytic functions of both p.Gly143Glu and p.Asp260fs are substantially impaired, resulting in a complete loss of hydrolytic activity toward methylphenidate. When a more sensitive esterase substrate, p-nitrophenyl acetate was utilized, only 21.4% and 0.6% catalytic efficiency (Vmax/Km) were determined in p.Gly143Glu and p.Asp260fs, respectively, compared to the wild-type enzyme. These findings indicate that specific CES1 gene variants can lead to clinically significant alterations in pharmacokinetics and drug response of carboxylesterase 1 substrates.
机译:人羧酸酯酶1(CES1)基因编码羧酸酯酶1(一种丝氨酸酯酶),可控制代谢失活和多种治疗剂的活化。在研究甲酯外消旋精神兴奋药哌醋甲酯的药代动力学过程中,观察到欧洲血统的患者体内哌醋甲酯血浆浓度显着升高,异构体分布发生前所未有的扭曲,血流动力学指标有所提高。这些观察结果导致对该受试者的CES1基因进行了重点研究。 DNA测序检测到位于外显子4和6的两个编码区单核苷酸突变。外显子4中的突变位于密码子143中,并导致非保守取代p.Gly143Glu。在第260位密码子上第6外显子的缺失导致移码突变p.Asp260fs,改变了残基260-299,然后被过早终止的密码子截断。在白人,黑人,西班牙裔和亚洲人群中,p.Gly143Glu的次要等位基因频率分别确定为3.7%,4.3%,2.0%和0%。在检查的925个单独的DNA样本中,没有一个携带p.Asp260fs,这表明它是极为罕见的突变。体外功能研究表明,p.Gly143Glu和p.Asp260fs的催化功能均被大大削弱,从而导致对哌醋甲酯的水解活性完全丧失。当使用更敏感的酯酶底物乙酸对硝基苯酯时,与野生型酶相比,p.Gly143Glu和p.Asp260fs的催化效率(Vmax / Km)分别仅为21.4%和0.6%。这些发现表明,特定的CES1基因变异可导致羧酸酯酶1底物的药代动力学和药物反应发生临床显着变化。

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